521 lines
13 KiB
Java
521 lines
13 KiB
Java
package appeng.helpers;
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import net.minecraft.inventory.IInventory;
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import net.minecraft.item.ItemStack;
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import net.minecraft.nbt.NBTTagCompound;
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import net.minecraft.tileentity.TileEntity;
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import net.minecraftforge.common.util.ForgeDirection;
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import appeng.api.AEApi;
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import appeng.api.config.Actionable;
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import appeng.api.implementations.tiles.ISegmentedInventory;
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import appeng.api.networking.GridFlags;
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import appeng.api.networking.IGridNode;
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import appeng.api.networking.energy.IEnergySource;
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import appeng.api.networking.security.BaseActionSource;
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import appeng.api.networking.security.MachineSource;
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import appeng.api.networking.ticking.IGridTickable;
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import appeng.api.networking.ticking.TickRateModulation;
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import appeng.api.networking.ticking.TickingRequest;
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import appeng.api.parts.IPart;
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import appeng.api.storage.IMEInventory;
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import appeng.api.storage.IMEMonitor;
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import appeng.api.storage.IStorageMonitorable;
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import appeng.api.storage.data.IAEFluidStack;
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import appeng.api.storage.data.IAEItemStack;
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import appeng.api.util.AECableType;
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import appeng.api.util.DimensionalCoord;
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import appeng.api.util.IConfigManager;
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import appeng.api.util.IConfigureableObject;
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import appeng.core.settings.TickRates;
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import appeng.me.GridAccessException;
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import appeng.me.helpers.AENetworkProxy;
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import appeng.me.storage.MEMonitorIInventory;
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import appeng.me.storage.MEMonitorPassthu;
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import appeng.me.storage.NullInventory;
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import appeng.tile.inventory.AppEngInternalAEInventory;
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import appeng.tile.inventory.AppEngInternalInventory;
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import appeng.tile.inventory.IAEAppEngInventory;
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import appeng.tile.inventory.InvOperation;
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import appeng.util.ConfigManager;
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import appeng.util.IConfigManagerHost;
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import appeng.util.InventoryAdaptor;
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import appeng.util.Platform;
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import appeng.util.inv.AdaptorIInventory;
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import appeng.util.inv.IInventoryDestination;
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import appeng.util.inv.WrapperInvSlot;
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public class DualityInterface implements IGridTickable, ISegmentedInventory, IStorageMonitorable, IInventoryDestination, IAEAppEngInventory,
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IConfigureableObject, IConfigManagerHost
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{
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final int sides[] = new int[] { 0, 1, 2, 3, 4, 5, 6, 7 };
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final IAEItemStack requireWork[] = new IAEItemStack[] { null, null, null, null, null, null, null, null };
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boolean hasConfig = false;
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AENetworkProxy gridProxy;
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IInterfaceHost iHost;
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BaseActionSource mySrc;
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ConfigManager cm = new ConfigManager( this );
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public DualityInterface(AENetworkProxy prox, IInterfaceHost ih) {
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gridProxy = prox;
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gridProxy.setFlags( GridFlags.REQUIRE_CHANNEL );
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iHost = ih;
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mySrc = fluids.changeSource = items.changeSource = new MachineSource( iHost );
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}
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@Override
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public void saveChanges()
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{
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iHost.saveChanges();
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}
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private void readConfig()
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{
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boolean hadConfig = hasConfig;
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hasConfig = false;
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for (ItemStack p : config)
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{
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if ( p != null )
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{
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hasConfig = true;
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break;
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}
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}
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boolean had = hasWorkToDo();
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for (int x = 0; x < 8; x++)
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updatePlan( x );
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boolean has = hasWorkToDo();
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if ( had != has )
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{
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try
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{
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if ( has )
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gridProxy.getTick().alertDevice( gridProxy.getNode() );
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else
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gridProxy.getTick().sleepDevice( gridProxy.getNode() );
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}
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catch (GridAccessException e)
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{
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// :P
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}
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}
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TileEntity te = iHost.getTileEntity();
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if ( hadConfig != hasConfig && te != null && te.getWorldObj() != null )
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{
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te.getWorldObj().notifyBlocksOfNeighborChange( te.xCoord, te.yCoord, te.zCoord, Platform.air );
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}
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}
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public void writeToNBT(NBTTagCompound data)
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{
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config.writeToNBT( data, "config" );
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patterns.writeToNBT( data, "patterns" );
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storage.writeToNBT( data, "storage" );
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}
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public void readFromNBT(NBTTagCompound data)
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{
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config.readFromNBT( data, "config" );
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patterns.readFromNBT( data, "patterns" );
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storage.readFromNBT( data, "storage" );
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readConfig();
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}
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AppEngInternalAEInventory config = new AppEngInternalAEInventory( this, 8 );
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AppEngInternalInventory storage = new AppEngInternalInventory( this, 8 );
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AppEngInternalInventory patterns = new AppEngInternalInventory( this, 9 );
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WrapperInvSlot slotInv = new WrapperInvSlot( storage );
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InventoryAdaptor adaptor = new AdaptorIInventory( slotInv );
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IMEInventory<IAEItemStack> destination;
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private boolean isWorking = false;
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@Override
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public boolean canInsert(ItemStack stack)
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{
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IAEItemStack out = destination.injectItems( AEApi.instance().storage().createItemStack( stack ), Actionable.SIMULATE, null );
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if ( out == null )
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return true;
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return out.getStackSize() != stack.stackSize;
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// ItemStack after = adaptor.simulateAdd( stack );
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// if ( after == null )
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// return true;
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// return after.stackSize != stack.stackSize;
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}
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private void updatePlan(int slot)
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{
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IAEItemStack req = config.getAEStackInSlot( slot );
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if ( req != null && req.getStackSize() <= 0 )
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{
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config.setInventorySlotContents( slot, null );
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req = null;
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}
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ItemStack Stored = storage.getStackInSlot( slot );
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if ( req == null && Stored != null )
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{
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IAEItemStack work = AEApi.instance().storage().createItemStack( Stored );
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requireWork[slot] = work.setStackSize( -work.getStackSize() );
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return;
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}
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else if ( req != null )
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{
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if ( Stored == null ) // need to add stuff!
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{
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requireWork[slot] = req.copy();
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return;
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}
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else if ( req.isSameType( Stored ) ) // same type ( qty diffrent? )!
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{
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if ( req.getStackSize() != Stored.stackSize )
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{
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requireWork[slot] = req.copy();
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requireWork[slot].setStackSize( req.getStackSize() - Stored.stackSize );
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return;
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}
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}
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else if ( Stored != null ) // dispose!
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{
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IAEItemStack work = AEApi.instance().storage().createItemStack( Stored );
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requireWork[slot] = work.setStackSize( -work.getStackSize() );
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return;
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}
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}
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// else
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requireWork[slot] = null;
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}
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static private boolean interfaceRequest = false;
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class InterfaceInventory extends MEMonitorIInventory
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{
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public InterfaceInventory(DualityInterface tileInterface) {
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super( InventoryAdaptor.getAdaptor( tileInterface.storage, ForgeDirection.UP ) );
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mySource = new MachineSource( iHost );
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}
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@Override
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public IAEItemStack injectItems(IAEItemStack input, Actionable type, BaseActionSource src)
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{
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if ( interfaceRequest )
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return input;
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return super.injectItems( input, type, src );
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}
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@Override
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public IAEItemStack extractItems(IAEItemStack request, Actionable type, BaseActionSource src)
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{
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if ( interfaceRequest )
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return null;
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return super.extractItems( request, type, src );
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}
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};
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private boolean usePlan(int x, IAEItemStack itemStack)
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{
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boolean changed = false;
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slotInv.setSlot( x );
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interfaceRequest = isWorking = true;
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try
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{
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destination = gridProxy.getStorage().getItemInventory();
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IEnergySource src = gridProxy.getEnergy();
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if ( itemStack.getStackSize() > 0 )
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{
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// make sure strange things didn't happen...
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if ( adaptor.simulateAdd( itemStack.getItemStack() ) != null )
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{
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changed = true;
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throw new GridAccessException();
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}
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IAEItemStack aquired = Platform.poweredExtraction( src, destination, itemStack, mySrc );
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if ( aquired != null )
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{
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changed = true;
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ItemStack issue = adaptor.addItems( aquired.getItemStack() );
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if ( issue != null )
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throw new RuntimeException( "bad attempt at managing inventory. ( addItems )" );
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}
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}
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else if ( itemStack.getStackSize() < 0 )
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{
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IAEItemStack toStore = itemStack.copy();
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toStore.setStackSize( -toStore.getStackSize() );
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long diff = toStore.getStackSize();
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// make sure strange things didn't happen...
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ItemStack canExtract = adaptor.simulateRemove( (int) diff, toStore.getItemStack(), null );
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if ( canExtract == null || canExtract.stackSize != diff )
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{
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changed = true;
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throw new GridAccessException();
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}
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toStore = Platform.poweredInsert( src, destination, toStore, mySrc );
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if ( toStore != null )
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diff -= toStore.getStackSize();
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if ( diff != 0 )
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{
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// extract items!
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changed = true;
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ItemStack removed = adaptor.removeItems( (int) diff, null, null );
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if ( removed == null )
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throw new RuntimeException( "bad attempt at managing inventory. ( removeItems )" );
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else if ( removed.stackSize != diff )
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throw new RuntimeException( "bad attempt at managing inventory. ( removeItems )" );
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}
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}
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// else wtf?
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}
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catch (GridAccessException e)
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{
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// :P
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}
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if ( changed )
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updatePlan( x );
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interfaceRequest = isWorking = false;
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return changed;
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}
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public IInventory getConfig()
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{
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return config;
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}
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public IInventory getPatterns()
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{
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return patterns;
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}
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MEMonitorPassthu<IAEItemStack> items = new MEMonitorPassthu<IAEItemStack>( new NullInventory(), IAEItemStack.class );
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MEMonitorPassthu<IAEFluidStack> fluids = new MEMonitorPassthu<IAEFluidStack>( new NullInventory(), IAEFluidStack.class );
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public void gridChanged()
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{
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try
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{
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items.setInternal( gridProxy.getStorage().getItemInventory() );
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fluids.setInternal( gridProxy.getStorage().getFluidInventory() );
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}
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catch (GridAccessException gae)
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{
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items.setInternal( new NullInventory() );
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fluids.setInternal( new NullInventory() );
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}
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TileEntity te = iHost.getTileEntity();
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te.getWorldObj().notifyBlocksOfNeighborChange( te.xCoord, te.yCoord, te.zCoord, Platform.air );
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}
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public AECableType getCableConnectionType(ForgeDirection dir)
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{
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return AECableType.SMART;
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}
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public DimensionalCoord getLocation()
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{
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return new DimensionalCoord( iHost.getTileEntity() );
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}
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public IInventory getInternalInventory()
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{
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return storage;
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}
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public void markDirty()
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{
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for (int slot = 0; slot < storage.getSizeInventory(); slot++)
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onChangeInventory( storage, slot, InvOperation.markDirty, null, null );
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}
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@Override
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public void onChangeInventory(IInventory inv, int slot, InvOperation mc, ItemStack removed, ItemStack added)
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{
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if ( isWorking )
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return;
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if ( inv == config )
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readConfig();
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else if ( inv == patterns )
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{
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}
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else if ( inv == storage && slot >= 0 )
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{
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boolean had = hasWorkToDo();
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updatePlan( slot );
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boolean now = hasWorkToDo();
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if ( had != now )
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{
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try
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{
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if ( now )
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gridProxy.getTick().alertDevice( gridProxy.getNode() );
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else
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gridProxy.getTick().sleepDevice( gridProxy.getNode() );
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}
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catch (GridAccessException e)
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{
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// :P
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}
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}
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}
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}
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public boolean hasWorkToDo()
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{
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return requireWork[0] != null || requireWork[1] != null || requireWork[2] != null || requireWork[3] != null || requireWork[4] != null
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|| requireWork[5] != null || requireWork[6] != null || requireWork[7] != null;
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}
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private boolean updateStorage()
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{
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boolean didSomething = false;
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for (int x = 0; x < 8; x++)
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{
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if ( requireWork[x] != null )
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{
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didSomething = usePlan( x, requireWork[x] ) || didSomething;
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}
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}
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return didSomething;
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}
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public boolean hasConfig()
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{
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return hasConfig;
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}
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public int[] getAccessibleSlotsFromSide(int side)
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{
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return sides;
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}
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@Override
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public TickingRequest getTickingRequest(IGridNode node)
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{
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return new TickingRequest( TickRates.Interface.min, TickRates.Interface.max, !hasWorkToDo(), true );
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}
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@Override
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public TickRateModulation tickingRequest(IGridNode node, int TicksSinceLastCall)
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{
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boolean couldDoWork = updateStorage();
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return hasWorkToDo() ? (couldDoWork ? TickRateModulation.URGENT : TickRateModulation.SLOWER) : TickRateModulation.SLEEP;
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}
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@Override
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public IMEMonitor<IAEItemStack> getItemInventory()
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{
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if ( hasConfig() )
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return new InterfaceInventory( this );
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return items;
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}
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@Override
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public IMEMonitor<IAEFluidStack> getFluidInventory()
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{
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if ( hasConfig() )
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return null;
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return fluids;
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}
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@Override
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public IInventory getInventoryByName(String name)
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{
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if ( name.equals( "storage" ) )
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return storage;
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if ( name.equals( "patterns" ) )
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return patterns;
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if ( name.equals( "config" ) )
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return config;
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return null;
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}
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public IInventory getStorage()
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{
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return storage;
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}
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public TileEntity getTile()
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{
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return (TileEntity) (iHost instanceof TileEntity ? iHost : null);
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}
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public IPart getPart()
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{
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return (IPart) (iHost instanceof IPart ? iHost : null);
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}
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public appeng.api.util.IConfigManager getConfigManager()
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{
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return cm;
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}
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@Override
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public void updateSetting(IConfigManager manager, Enum settingName, Enum newValue)
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{
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// TODO Auto-generated method stub
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}
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public IStorageMonitorable getMonitorable(ForgeDirection side, BaseActionSource src, IStorageMonitorable myInterface)
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{
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if ( Platform.canAccess( gridProxy, src ) )
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return myInterface;
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final DualityInterface di = this;
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return new IStorageMonitorable() {
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@Override
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public IMEMonitor<IAEItemStack> getItemInventory()
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{
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return new InterfaceInventory( di );
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}
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@Override
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public IMEMonitor<IAEFluidStack> getFluidInventory()
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{
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return null;
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}
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};
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};
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}
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